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固定化双酶系统中的模式形成。一种形态发生模型。

Pattern formation in an immobilized bienzyme system. A morphogenetic model.

作者信息

Cortassa S, Sun H, Kernevez J P, Thomas D

机构信息

Laboratoire de Technologie Enzymatique, U.R.A. N. 41 du Centre National de la Recherche Scientifique (CNRS), Compiègne, France.

出版信息

Biochem J. 1990 Jul 1;269(1):115-22. doi: 10.1042/bj2690115.

Abstract

Experimental and theoretical studies of a reaction-diffusion model of two immobilized enzymes participating in the cellular acid-base metabolism, namely glutaminase and urease, are presented. The system shows an unstable steady state at pH 6.0, where any perturbation will drive the system towards a more alkaline or more acidic pH, owing to the autocatalytic behaviour with respect to pH exhibited by both enzymes. When diffusion is coupled to reaction by means of immobilization, different patterns of the internal pH profile appear across the membrane. If the bienzymic membrane is subjected to a perturbation at its boundaries, of the same amplitude but in opposite directions, the internal pH evolves through an asymmetric pattern to attain a nearly symmetric distribution of pH. The pH value at the final steady state is more acidic or more alkaline than the initial state according to the initial and boundary conditions. The final nearly symmetric state is attained more rapidly when less enzyme is immobilized (1.8 x 10(-4) M.s-1 as against 3.3 x 10(-4) M.s-1 of total enzyme activity in the membrane volume). The experimental results agree rather well qualitatively with numerical predictions of the model equations.

摘要

本文介绍了参与细胞酸碱代谢的两种固定化酶(即谷氨酰胺酶和脲酶)反应扩散模型的实验和理论研究。该系统在pH 6.0时呈现不稳定的稳态,由于两种酶对pH均表现出自催化行为,任何扰动都会使系统朝着更碱性或更酸性的pH值变化。当通过固定化将扩散与反应耦合时,膜内会出现不同的内部pH分布模式。如果对双酶膜在其边界处施加幅度相同但方向相反的扰动,内部pH会通过不对称模式演变,以达到近乎对称的pH分布。根据初始条件和边界条件,最终稳态时的pH值比初始状态更酸性或更碱性。当固定化的酶较少时(膜体积中总酶活性为1.8×10⁻⁴ M·s⁻¹,而不是3.3×10⁻⁴ M·s⁻¹),能更快达到最终的近乎对称状态。实验结果在定性上与模型方程的数值预测相当吻合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea8e/1131539/21e52324aace/biochemj00180-0123-a.jpg

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